Dental School of Araraquara, UNESP-Universidade Estadual Paulista, Araraquara, SP, Brazil.
Ultrasound Med Biol. 2011 Dec;37(12):2133-8. doi: 10.1016/j.ultrasmedbio.2011.09.014. Epub 2011 Oct 27.
The application of ultrasound waves on glass ionomer cement (GIC) surface can accelerate the early setting reaction and improve the mechanical properties of the material, resulting in higher resistance to masticatory forces within a short period of time and thus increasing the clinical longevity of the GIC restoration. In this study, the microtensile bond strength (μTBS) of two high-viscosity GICs (Fuji IX GP and Ketac Molar Easymix) and one resin-modified GIC (RMGIC-Vitremer) to dentin was tested after ultrasonic excitation and water storage. GIC blocks were built up on coronal dentin either receiving or not receiving a 30-s ultrasound application during the material initial setting. After storage in water for either 24 h or 30 d, beam-shaped specimens with a cross-sectional area of approximately 1.0 mm(2) were cut perpendicular to GIC/dentin interface and tested to failure. At 24 h, the ultrasonically set Ketac Molar had significantly higher (p < 0.05) μTBS than the cement set conventionally. Chemically set Ketac Molar presented significantly higher μTBS after the longer water storage (p < 0.05). The RMGIC presented the highest μTBS regardless of ultrasonic excitation and storage period. In conclusion, ultrasound application to Ketac Molar improved its adhesion to dentin, particularly within the first 24 h after setting. Clinically, it seems that ultrasonic excitation can contribute to prevent retention loss of restoration at early stages of GIC setting reaction.
超声应用于玻璃离子水门汀(GIC)表面可以加速早期凝固反应,提高材料的机械性能,从而在短时间内提高材料对咀嚼力的抵抗力,增加 GIC 修复体的临床寿命。本研究测试了两种高粘度 GIC(Fuji IX GP 和 Ketac Molar Easymix)和一种树脂改性 GIC(RMGIC-Vitremer)在超声激发和水储存后的牙本质微拉伸粘结强度(μTBS)。在材料初始凝固过程中,在冠部牙本质上构建 GIC 块,其中一些接受 30 秒的超声处理,而另一些不接受。水储存 24 h 或 30 d 后,从 GIC/牙本质界面垂直切割出横截面面积约为 1.0 mm(2)的梁状试件,并进行断裂测试。在 24 h 时,经超声处理的 Ketac Molar 的 μTBS 明显高于(p < 0.05)常规凝固的水泥。经过更长时间的水储存(p < 0.05),化学凝固的 Ketac Molar 的 μTBS 明显更高。无论是否进行超声激发和储存期,RMGIC 均表现出最高的 μTBS。总之,超声应用于 Ketac Molar 可改善其与牙本质的粘结力,尤其是在凝固反应开始后的头 24 小时内。临床上,超声激发似乎可以有助于防止 GIC 凝固反应早期修复体的固位丧失。